The mechanism for regulating the critical temperature (TC) of metal-insulator transition (MIT) in ions-doped VO2 systems is still a matter of debate, in particular, the unclear roles of lattice distortion and charge doping effects. To rule out the charge doping effect on the regulation of TC, we investigated Ti(4+)-doped VO2 (TixV1-xO2) system. It was observed that the TC of TixV1-xO2 samples first slightly decreased and then increased with increasing Ti concentration. X-ray absorption fine structure (XAFS) spectroscopy was used to explore the electronic states and local lattice structures around both Ti and V atoms in TixV1-xO2 samples. Our results revealed the local structure evolution from the initial anatase to the rutile-like structure...
Vanadium dioxide (VO2) material shows a distinct metal-insulator transition (MIT) at the critical te...
Soft x-ray spectroscopy is used to investigate the strain dependence of the metal-insulator transiti...
The coupling of doped charge carriers with the crystal lattice is an efficient route to modulate the...
Abstract VO2 is a highly correlated electron system which has a metal-to-insulator transition (MIT) ...
The substitutional doping of Mo within VO<sub>2</sub> substantially alters the electronic and struct...
VO2 is a strongly correlated electron system that undergoes a reversible Metal-Insulator transition ...
International audienceIn this paper we investigate the effect of disorder on highly correlated elect...
9The Metal-Insulator transition (MIT) in VO2 is characterized by the complex interplay among lattice...
Temperature-driven phase transitions of V1−xCrxO2 (with x = 0.00 and 0.007) have been studied by mea...
9VO2 is a strongly correlated material, which undergoes a reversible metal insulator transition (MIT...
Vanadium dioxide (VO2) undergoes a phase transition between an insulating monoclinic phase and a con...
Among transition metal oxides, VO2 is a particularly interesting and challenging correlated electron...
We investigated the inhomogeneous electronic properties at the surface and interior of VO2 thin film...
© 2015 American Chemical Society. There has been long-standing interest in tuning the metal-insulato...
International audienceThe role of epitaxial strain, thermal strain, and bulk (strain-free) lattice p...
Vanadium dioxide (VO2) material shows a distinct metal-insulator transition (MIT) at the critical te...
Soft x-ray spectroscopy is used to investigate the strain dependence of the metal-insulator transiti...
The coupling of doped charge carriers with the crystal lattice is an efficient route to modulate the...
Abstract VO2 is a highly correlated electron system which has a metal-to-insulator transition (MIT) ...
The substitutional doping of Mo within VO<sub>2</sub> substantially alters the electronic and struct...
VO2 is a strongly correlated electron system that undergoes a reversible Metal-Insulator transition ...
International audienceIn this paper we investigate the effect of disorder on highly correlated elect...
9The Metal-Insulator transition (MIT) in VO2 is characterized by the complex interplay among lattice...
Temperature-driven phase transitions of V1−xCrxO2 (with x = 0.00 and 0.007) have been studied by mea...
9VO2 is a strongly correlated material, which undergoes a reversible metal insulator transition (MIT...
Vanadium dioxide (VO2) undergoes a phase transition between an insulating monoclinic phase and a con...
Among transition metal oxides, VO2 is a particularly interesting and challenging correlated electron...
We investigated the inhomogeneous electronic properties at the surface and interior of VO2 thin film...
© 2015 American Chemical Society. There has been long-standing interest in tuning the metal-insulato...
International audienceThe role of epitaxial strain, thermal strain, and bulk (strain-free) lattice p...
Vanadium dioxide (VO2) material shows a distinct metal-insulator transition (MIT) at the critical te...
Soft x-ray spectroscopy is used to investigate the strain dependence of the metal-insulator transiti...
The coupling of doped charge carriers with the crystal lattice is an efficient route to modulate the...